Диссертация (1145499), страница 50
Текст из файла (страница 50)
7, № 4. P.2898–2926.332341. Li D., Kaner R.B. Materials science. Graphene-based materials. // Science.2008. Vol. 320, № 5880. P. 1170–1171.342. Compton O.C., Nguyen S.T. Graphene oxide, highly reduced grapheneoxide, and graphene: Versatile building blocks for carbon-based materials //Small.
2010. Vol. 6, № 6. P. 711–723.343. Liu Z., Zhang X., Yan X., Chen Y., Tian J. Nonlinear optical properties ofgraphene-based materials // Chinese Science Bulletin. 2012. Vol. 57, № 23.P. 2971–2982.344. Hong W., Bai H., Xu Y., Yao Z., Gu Z., Shi G. Preparation of GoldNanoparticle/Graphene Composites with Controlled Weight Contents andTheir Application in Biosensors // J. Phys. Chem. C. 2010. Vol.
114, № 4. P.1822–1826.345. Gonçalves G., Marques P.A.A.P., Barros-Timmons A., Bdkin I., Singh M.K.,Emami N., Grácio J. Graphene oxide modified with PMMA via ATRP as areinforcement filler // J. Mater. Chem. 2010. Vol. 20, № 44. P. 9927.346. Si Y., Samulski E.T. Exfoliated graphene separated by platinumnanoparticles // Chem. Mater. 2008. Vol. 20, № 21. P. 6792–6797.347. Scheuermann G.M., Rumi L., Steurer P., Bannwarth W., Mulhaupt R.Palladium Nanoparticles on Graphite Oxide and Its Functionalized GrapheneDerivatives as Highly Active Catalysts for the Suzuki-Miyaura CouplingReaction // J. Am. Chem. Soc.
2009. Vol. 131, № 23. P. 8262–8270.348. Shen J., Shi M., Li N., Yan B., Ma H., Hu Y., Ye M. Facile synthesis andapplication of Ag-chemically converted graphene nanocomposite // NanoRes. 2010. Vol. 3, № 5. P. 339–349.349. Marques P., Gonalves G., Cruz S., Almeida N., Singh M., Grcio J., Sous A.Functionalized Graphene Nanocomposites // Advances in NanocompositeTechnology.
InTech, 2011.350. Khoo K.H., Neaton J.B., Son Y.W., Cohen M.L., Louie S.G. Negativedifferential resistance in carbon atomic wire-carbon nanotube junctions //Nano Lett. 2008. Vol. 8, № 9. P. 2900–2905.351. Routh P., Layek R.K., Nandi A.K. Negative differential resistance andimproved optoelectronic properties in Ag nanoparticles-decorated grapheneoxide-riboflavin hybrids // Carbon N. Y.
2012. Vol. 50, № 10. P. 3422–3434.352. Bass M. Handbook of Optics - Volume I: Geometrical and Physical Optics,Polarized Light, Components and Instru- ments. 2009. 1248 p.353. Banzer P., Peschel U., Quabis S., Leuchs G. On the experimentalinvestigation of the electric and magnetic response of a single nano-structure.// Opt. Express. 2010. Vol.
18, № 2002. P. 10905–10923.333354. Woźniak P., Banzer P., Leuchs G. Selective switching of individualmultipole resonances in single dielectric nanoparticles // Laser PhotonicsRev. 2015. Vol. 9, № 2. P. 231–240.355. Asmar M.M., Ulloa S.E. Rashba spin-orbit interaction and birefringentelectron optics in graphene // Phys.
Rev. B - Condens. Matter Mater. Phys.2013. Vol. 87, № 7.356. Strikha M. V., Vasko F.T. Electro-optics of graphene: Field-modulatedreflection and birefringence // Phys. Rev. B - Condens. Matter Mater. Phys.2010. Vol. 81, № 11.357. Van Duppen B., Tomadin A., Grigorenko A.N., Polini M. Current-inducedbirefringent absorption and non-reciprocal plasmons in graphene // 2D Mater.2016. Vol. 3, № 1. P. 015011.358. Sarau G., Lahiri B., Banzer P., Gupta P., Bhattacharya A., Vollmer F.,Christiansen S.
Enhanced Raman Scattering of Graphene using Arrays ofSplit Ring Resonators // Adv. Opt. Mater. 2013. Vol. 1, № 2. P. 151–157.359. Dobmann S., Shyroki D., Banzer P., Erdmann A., Peschel U. Resonantmetamaterials for contrast enhancement in optical lithography // Opt.Express. 2012. Vol.
20, № 18. P. 19928.360. Gu L., Hall D.J., Qin Z., Anglin E., Joo J., Mooney D.J., Howell S.B., SailorM.J. In vivo time-gated fluorescence imaging with biodegradableluminescent porous silicon nanoparticles. // Nat. Commun. 2013. Vol. 4. P.2326.361. Probst J., Dembski S., Milde M., Rupp S. Luminescent nanoparticles andtheir use for in vitro and in vivo diagnostics // Expert Rev. Mol.
Diagn. 2012.Vol. 12, № 1. P. 49–64.362. Michalet X., Pinaud F.F., Bentolila L.A., Tsay J.M., Doose S., Li J.J.,Sundaresan G., Wu A.M., Gambhir S.S., Weiss S., Manuscript A. Quantumdots for live cells, in vivo imaging, and diagnostics. // Science. 2005. Vol.307, № 5709. P. 538–544.363. Hezinger A.F.E., Teßmar J., Göpferich A. Polymer coating of quantum dots A powerful tool toward diagnostics and sensorics // European Journal ofPharmaceutics and Biopharmaceutics. 2008.
Vol. 68, № 1. P. 138–152.364. Schietinger S., Aichele T., Wang H.Q., Nann T., Benson O. Plasmonenhanced upconversion in single NaYF4:Yb 3+/Er3+ codoped nanocrystals //Nano Lett. 2010. Vol. 10, № 1. P. 134–138.365. Ge W., Zhang X.R., Liu M., Lei Z.W., Knize R.J., Lu Y. DistanceDependence of Gold-Enhanced Upconversion luminescence inAu/SiO2/Y2O3:Yb(3+), Er(3+) Nanoparticles. // Theranostics. 2013. Vol.
3,№ 4. P. 282–288.334366. Greybush N.J., Saboktakin M., Ye X., Della Giovampaola C., Oh S.J., BerryN.E., Engheta N., Murray C.B., Kagan C.R. Plasmon-enhanced upconversionluminescence in single nanophosphor-nanorod heterodimers formed throughtemplate-assisted self-assembly // ACS Nano. 2014. Vol. 8, № 9. P.
9482–9491.367. Pechini M. Patent No. 3,330,697 // United States Pat. Off. 1967.368. Kolesnikov I.E., Tolstikova D.V., Kurochkin A.V., Pulkin S.A., ManshinaA.A., Mikhailov M.D. Concentration effect on photoluminescence of Eu3+doped nanocrystalline YVO4 // J. Lumin. 2015. Vol. 158. P. 469–474.369.
Kolesnikov I.E., Povolotskiy A. V, Tolstikova D. V, Manshina A.A.,Mikhailov M.D. Luminescence of Y 3 Al 5 O 12 :Eu 3+ nanophosphors inblood and organic media // J. Phys. D. Appl. Phys. 2015. Vol. 48, № 7. P.075401.370. Kolesnikov I.E., Tolstikova D.V., Kurochkin A.V., Manshina A.A.,Mikhailov M.D. Eu3+ concentration effect on luminescence properties ofYAG:Eu3+ nanoparticles // Opt. Mater. (Amst).
2014. Vol. 37. P. 306–310.371. Dolinskaya Y. a., Kolesnikov I.E., Kurochkin a. V., Manshina a. a.,Mikhailov M.D., Semencha a. V. Sol-gel synthesis and luminescentproperties of YVO4 : Eu nanoparticles // Glas. Phys. Chem. 2013. Vol. 39, №3. P. 308–310.372.
Wang J., Huang H., Zhang D., Chen M., Zhang Y., Yu X., Zhou L., Wang Q.Synthesis of gold/rare-earth-vanadate core/shell nanorods for integratingplasmon resonance and fluorescence // Nano Res. 2015. Vol. 8, № 8. P.2548–2561.335.